Progesterone modulation of transmembrane helix-helix interactions between the -subunit of Na/K-ATPase and phospholipid N-methyltransferase in the oocyte plasma membrane

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Abstract

Background. Progesterone binding to the surface of the amphibian oocyte initiates the meiotic divisions. Our previous studies with Rana pipiens oocytes indicate that progesterone binds to a plasma membrane site within the external loop between the M1 and M2 helices of the -subunit of Na/K-ATPase, triggering a cascade of lipid second messengers and the release of the block at meiotic prophase. We have characterized this site, using a low affinity ouabain binding isoform of the 1-subunit. Results. Preparations of isolated plasma membranes from Rana oocytes demonstrate that physiological levels of progesterone (or the non-metabolizable progestin R5020) successively activate phosphatidylethanolamine-N-methyltransferase (PE-NMT) and sphingomyelin synthase within seconds. Inhibition of PE-NMT blocks the progesterone induction of meiosis in intact oocytes, whereas its initial product, phosphatidylmonomethylethanolamine (PME), can itself initiate meiosis in the presence of the inhibitor. Published X-ray crystallographic data on Na/K-ATPase, computer-generated 3D projections, heptad repeat analysis and hydrophobic cluster analysis of the transmembrane helices predict that hydrophobic residues L, V, V, I, F and Y of helix M2 of the 1-subunit interact with F, L, G, L, L and F, respectively, of helix M3 of PE-NMT. Conclusion. We propose that progesterone binding to the first external loop of the 1-subunit facilitates specific helix-helix interactions between integral membrane proteins to up-regulate PE-NMT, and, that successive interactions between two or more integral plasma membrane proteins induce the signaling cascades which result in completion of the meiotic divisions. © 2010 Morrill et al; licensee BioMed Central Ltd.

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Morrill, G. A., Kostellow, A. B., & Askari, A. (2010). Progesterone modulation of transmembrane helix-helix interactions between the -subunit of Na/K-ATPase and phospholipid N-methyltransferase in the oocyte plasma membrane. BMC Structural Biology, 10. https://doi.org/10.1186/1472-6807-10-12

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